Chang Andrew T, Liu Yuanjie, Ayyanathan Kasirajan, Benner Chris, Jiang Yike, Prokop Jeremy W, Paz Helicia, Wang Dong, Li Hai-Ri, Fu Xiang-Dong, Rauscher Frank J, Yang Jing
Department of Pharmacology, University of California at San Diego, La Jolla, California, 92093, USA; The Biomedical Sciences Graduate Program, University of California at San Diego, La Jolla, California, 92093, USA;
The Wistar Institute, Philadelphia, Pennsylvania 19104, USA;
Genes Dev. 2015 Mar 15;29(6):603-16. doi: 10.1101/gad.242842.114. Epub 2015 Mar 11.
Basic helix-loop-helix (bHLH) transcription factors recognize the canonical E-box (CANNTG) to regulate gene transcription; however, given the prevalence of E-boxes in a genome, it has been puzzling how individual bHLH proteins selectively recognize E-box sequences on their targets. TWIST is a bHLH transcription factor that promotes epithelial-mesenchymal transition (EMT) during development and tumor metastasis. High-resolution mapping of TWIST occupancy in human and Drosophila genomes reveals that TWIST, but not other bHLH proteins, recognizes a unique double E-box motif with two E-boxes spaced preferentially by 5 nucleotides. Using molecular modeling and binding kinetic analyses, we found that the strict spatial configuration in the double E-box motif aligns two TWIST-E47 dimers on the same face of DNA, thus providing a high-affinity site for a highly stable intramolecular tetramer. Biochemical analyses showed that the WR domain of TWIST dimerizes to mediate tetramer formation, which is functionally required for TWIST-induced EMT. These results uncover a novel mechanism for a bHLH transcription factor to recognize a unique spatial configuration of E-boxes to achieve target specificity. The WR-WR domain interaction uncovered here sets an example of target gene specificity of a bHLH protein being controlled allosterically by a domain outside of the bHLH region.
碱性螺旋-环-螺旋(bHLH)转录因子通过识别典型的E盒(CANNTG)来调控基因转录;然而,鉴于基因组中E盒的普遍性,单个bHLH蛋白如何在其靶标上选择性识别E盒序列一直是个谜。TWIST是一种bHLH转录因子,在发育和肿瘤转移过程中促进上皮-间质转化(EMT)。对人类和果蝇基因组中TWIST占据情况的高分辨率图谱分析显示,TWIST而非其他bHLH蛋白识别一种独特的双E盒基序,其中两个E盒优先间隔5个核苷酸。通过分子建模和结合动力学分析,我们发现双E盒基序中严格的空间构型使两个TWIST-E47二聚体排列在DNA的同一面上,从而为高度稳定的分子内四聚体提供了一个高亲和力位点。生化分析表明,TWIST的WR结构域二聚化以介导四聚体形成,这是TWIST诱导EMT功能上所必需的。这些结果揭示了一种bHLH转录因子识别E盒独特空间构型以实现靶标特异性的新机制。此处揭示的WR-WR结构域相互作用为bHLH蛋白的靶基因特异性受bHLH区域外的一个结构域变构调控提供了一个范例。